Huang Xianfeng
Gender:Male
Education Level:研究生毕业
Alma Mater:武汉大学
Paper Publications
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[1]. Glass fasade segmentation and repair for aerial photogrammetric 3D building models with multiple constraints. International Journal of Applied Earth Observation and Geoinformation. 2023.103242 1569-8432. 2023.
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[2]. A symmetry-aware alignment method for photogrammetric 3D models. ISPRS Journal of Photogrammetry and Remote Sensing. (204 (2023) 184–208).
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[3]. Oblique photogrammetry supporting procedural tree modeling in urban areas. ISPRS Journal of Photogrammetry and Remote Sensing. (200 (2023) 120–137).
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[4]. 黄先锋 Instance Segmentation in Very High Resolution Remote Sensing Imagery Based on Hard-to-Segment Instance Learning and Boundary Shape Analysis. Remote sensing. (2022, 14, 23). 2022.
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[5]. Improved instance segmentation for slender urban road facility extraction using oblique aerial images. International Journal of Applied Earth Observation and Geoinformation. (121 (2023) 103362). 2023.
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[6]. Images Enhancement of Ancient Mural Painting of Bey’s Palace Constantine, Algeria and Lacuna Extraction Using Mahalanobis Distance Classification Approach. sensors. (2022, 22, 6643). 2022.
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[7]. Deep Learning for Image Inpainting: A Survey. Journal Pre-proof. (卷134 文献号109046).
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[8]. A Shape-Preserving Simplification Method for Urban Building Models. isprs International Journal of Geo-Information. (卷11 期11 文献号562). 2022.
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[9]. Deep Neural Networks for Quantitative Damage Evaluation of Building Losses Using Aerial Oblique Images: Case Study on the Great Wall (China).. Remote Sensing.
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[10]. A Dataset and Ensemble Model for Glass Facade Segmentation in Oblique Aerial Images. IEEE GEOSCIENCE AND REMOTE SENSING LETTERS. (卷19 文献号6513305). 2022.
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[11]. 黄先锋 Moving Car Recognition and Removal for 3D Urban Modelling Using Oblique Images. Remote sensing. (2021, 13, 3458). 2021.
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[12]. 黄先锋 Deep Neural Networks for Road Sign Detection and Embedded Modeling Using Oblique Aerial Images. Remote sensing. (2021, 13(5), 879.). 2021.
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[13]. 黄先锋 Robust Line Matching for Image Sequences Based on Point Correspondences and Line Mapping. IEEE access. ((2019,7)39879-39896). 2019.
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[14]. 黄先锋 多视角翻转拍摄物体的完整三维重建. 测绘学报. (2023年第8期第52卷). 2023.
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[15]. 黄先锋 小型文物摄影测量三维建模主体对象识别. 遥感学报. (1007-4619(2021)12-2409-12).
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[16]. 黄先锋 倾斜摄影建筑物模型自动纹理重建. 测绘学报. 第52卷 (2023年第9期). 2023.
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[17]. 黄先锋 实景三维中国建设技术大纲(2021 版)》解读与思考. 测绘地理信息. (2021-10-18). 2021.
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[18]. 黄先锋 顾及噪声密度函数差异的自适应回归算法及其在人工标靶提取中的应用. 测绘学报. (2021年50 卷第2期:226-234). 2021.
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[19]. A missing color area extraction approach from high resolution statue images for cultural heritage documentation. Scientific Reports. (卷:10 期:1 页:21939). 2020.
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[20]. 基于Nelder- Mead算法的3D打印模型最优化放置. 计算机技术与发展. (2018年11月第28卷). 2018.
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[21]. High Precision Texture Reconstruction For 3D Sculpture Model. ISPRS 2012. (2012.8.26).
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[22]. 倾斜摄影测量技术在大比例尺地形图测绘中的应用. 测绘通报. (2018(2):111-115). 2018.
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[23]. 近景摄影测量中圆标靶圆心提取的方法. 地理空间信息. (2018 年 10 月 第 16 卷第 10 期). 2018.
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[24]. 高分辨率航空影像中斑马线的识别与重建方法. 武汉大学学报 信息科学版. (2017年10月42卷10期). 2017.
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[25]. 黄先锋 基于倾斜影像的城市场景隐式曲面重建. 测绘通报. (2017( 12) : 21-28). 2017.
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[26]. 结合样本自动选择与规则性约束的窗户提取方法. 武汉大学学报 信息科学版. (2017年4月14日网络出版). 2017.
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[27]. 黄先锋 a target aware texture mapping for sculpture heritage modeling. 加拿大CIPA会议. 2017.
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[28]. 基于兴趣边缘优化的壁画影像与激光扫描数据非刚性配准. 中国科学F辑:信息科学. (42(4):493-503).
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[29]. 黄先锋 非直视区域的普通平面镜辅助地面三维激光扫描方法. 测绘学报. (2017年12月). 2017.
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[30]. a multilevel point-cluster-based discriminative feature for ALS point cloud classification.. ieee transactions on geoscience and remote sensing. (2016, PP(99):1-13). 2016.
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[31]. An Improved Method for Power-Line Reconstruction from Point Cloud Data. Remote Sensing. (2016,8:36). 2016.
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[32]. 黄先锋 a stochastic geometry method for pylon reconstruction from airborne LiDAR data.. Remote Sensing. (2016, 8(3): 243). 2016.
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[33]. Extraction and Reconstruction of Zebra Crossings from high Resolution Aerial Images. International Journal of Geo-Information. (ISPRS Int. J. Geo-Inf. 2016, 5,). 2016.
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[34]. 黄先锋 Texture reconstruction of 3D sculpture using non-rigid transformation. Journal of Cultural Heritage. (16 (2015) 648–655). 2015.
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[35]. 黄先锋 Classification of Airborne Laser Scanning Data using JointBoost. ISPRS Journal of Photogrammetry and Remote Sensing. (卷: 100 页: 71-83). 2015.
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[36]. 黄先锋 Intensity Correction of Terrestrial Laser Scanning Data by Estimating Laser Transmission Function. IEEE Transactions on Geoscience and Remote Sensing. (卷: 53 期: 2 页: 942-951). 2015.
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[37]. 基于Oracle SDO_PC的点云数据存储管理技术的应用研究. 测绘通报. ((4): 57-60). 2015.
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[38]. 黄先锋 基于球面投影的单站地面激光点云直线段提取方法. 测绘学报. (655-662,2015.06). 2015.
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[39]. 黄先锋 结合点云和影像的标靶自动识别与中心提取. 测绘地理信息. (40卷03期). 2015.
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[40]. Registration of Aerial Imagery and Lidar Data in Desert Areas Using Sand Ridges. Photogrammetric Record. (30(151): 263–278). 2015.
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[41]. 黄先锋 基于LiDAR点云强度的十字剖分线法道路提取. 武汉大学学报. 信息科学版. 40 (1671-8860). 2015.
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[42]. Inferring building functions from a probabilistic model using public transportation data. Computers, Environment and Urban Systems. (Volume 48, November 2014, Pages 124–137). 2014.
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[43]. 黄先锋 A Hybrid Spatial Index for Massive Point Cloud Data Management and Visualization. Transactions in GIS. (卷: 18 增刊: 1 页: 97-108 出版年: NOV 2014). 2014.
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[44]. Detecting the dynamics of urban structure through spatial network analysis. International Journal of Geographical Information Science. (卷: 28 期: 11 页: 2178-2199). 2014.
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[45]. 黄先锋 A Methodology for Automated Segmentation and Reconstruction of Urban 3-D Buildings from ALS Point Clouds. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. (VOL. 7, NO. 10, OCTOBER 2014, 4199-4217). 2014.
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[46]. UNDERSTANDING SPATIO-TEMPORAL MOBILITY PATTERNS FOR SENIORS, CHILD/STUDENT AND ADULT USING SMART CARD DATA. ISPRS Technical Commission I Symposium. (17-20 November 2014,Denver,Colorado,USA). 2014.
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[47]. 黄先锋 UNDERSTANDING SPATIO-TEMPORAL MOBILITY PATTERNS FOR SENIORS, CHILD/STUDENT AND ADULT USING SMART CARD DATA. ISPRS TECHNICAL COMMISSION I SYMPOSIUM. 40-1 (2194-9034). 2014.
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[48]. Understanding metropolitan patterns of daily encounters. Proceedings of the National Academy of Sciences of the United States of America. (vol. 110 no. 34, 13774–13779). 2013.
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[49]. Classifying Watermelon Ripeness by Analysing Acoustic Signals Using Mobile Devices. Personal and Ubiquitous Computing. (1-10 , August 06, 2013). 2013.
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[50]. Increasing Detail of 3D Models Through Combined Photogrammetric and Procedural Modelling. Geo-spatial Information Science. (Vol: 16:(1), pp 45-53). 2013.
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[51]. Structural Approach for Pylon Reconstruction from Airborne Point Cloud Data. (ACRS 2013).
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[52]. 面向大规模真正射影像生产的快速遮蔽检测方法. 同济大学学报(自然科学版). (2013-0-18). 2013.
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[53]. Power Line Measurement Method Based on Vertical Baseline Photogrammetry. 2nd International Conference on Energy, Environment and Sustainable Development (EESD 2012). (OCT 12-14, 2012).
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[54]. Identifying spatial structure of urban functional centers using travel survey data: a case study of Singapore. ACM SIGSPATIAL International Conference on Advances in Geographic Information Systems. (November 5-8, 2013 - Orlando, Florida, USA).
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[55]. A coarse elevation map-based registration method for super-resolution of three-line scanner images. Photogrammetric Engineering and Remote Sensing. (v 79, n 8, p 717-730, August 2013). 2013.
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[56]. 基于竖直基线摄影测量的电力线测量方法. 测绘通报. ((11):33-36). 2013.
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[57]. 黄先锋 顾及空间上下文关系的JointBoost点云分类及特征降维. 测绘学报. (42:5(715-821)). 2013.
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[58]. 黄先锋 Registration of Aerial Imagery and Lidar Data in Desert Areas Using the Centroids of Bushes as Control Information. Photogrammetric Engineering & Remote Sensing. (vol. 79:8,743-752). 2013.
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[59]. New methodologies for precise building boundary extraction from LiDAR data and high resolution image. Sensor Review. (33 Iss: 2, pp.157 - 165). 2013.
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[60]. 机载LiDAR数据的城区树木点提取方法. 测绘科学. (10(14)). 2013.
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[61]. Non-rigid Registration of Mural Images and Laser Scanning Data Based on the Optimization of the Edges of Interest. Science China: Information Sciences. (June 2013, Volume 56, Issue 6, pp 1-10). 2013.
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[62]. 黄先锋 A Survey on Building Reconstruction from Airborne Laser Scanning Data. Geo-spatial Information Science. (Vol 16:(1), pp 33 - 44). 2013.
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[63]. 多激光扫描仪协作的大场景整体控制及精度分析. 第十届中国计算机图形学大会暨第十八届全国计算机辅助设计与图形学学会会议. (10月17-19日2014年).
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[64]. Using Smart Card Data to Extract Passenger’s Spatial-temporal Density and Train’s Trajectory of MRT System. ACM Transaction on Intelligent Systems and Technology (ACM TIST). (ACM UrbComp’12 ,Pages 142-148). 2012.
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[65]. Reliable Registration of Lidar Data and Aerial Images without Orientation Parameters. Sensor Review. (Vol. 32 Iss: 4, pp.280 - 287). 2012.
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[66]. 黄先锋 基于边长比约束的离散点准确边界追踪算法. 武汉大学学报. 信息科学版. 34 (1671-8860). 2009.
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[67]. 黄先锋 机载LiDAR数据滤波方法评述. 测绘学报. 38 (1001-1595). 2009.
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[68]. 黄先锋 A new shape model of the bilobate comet 67P/Churyumov-Gerasimenko. ICARUS. (Volume401, 115566).
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[69]. 黄先锋 基于带权点法向量的LiDAR数据屋顶检测方法. 武汉大学学报. 信息科学版. 34 (1671-8860). 2009.
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[70]. 黄先锋 机载激光扫描数据误差分析与精度改善研究进展. 遥感信息. (1000-3177). 2007.
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[71]. Integration of Mobile Laser Scanning Data with UAV Imagery for Very High Resolution 3D City Modelling. (MMT 2013, Taiwan).
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[72]. 依据点云强度校正的壁画纠正. 测绘学报. (44卷第5期2015).
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[73]. 黄先锋 多核计算环境下的LiDAR数据DEM内插方法研究. 山东科技大学学报 自然科学版. (2011, 30(1): 1-6).
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[74]. JOINT PROCESSING OF UAV IMAGERY AND TERRESTRIAL MOBILE MAPPING SYSTEM DATA FOR VERY HIGH RESOLUTION CITY MODELING. UAV-g2013. (IAPRS XL-1/W2).
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[75]. UAV project - building a reality based 3d model of the NUS(National University of Singapore) Campus. Asial Conference of Remote Sensing. (2012).
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[76]. Digital dunhung, from air to cave. Dunhuang Forum: International conference on culture heritage and digitization. (2012).
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[77]. Comprehensive study of landslides through the integration of multi remote sensing techniques: Framework and latest advances. Journal of Earth Science. (Vol. 23, No. 2, p. 243–252,2012.04).
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[78]. 黄先锋 机载激光雷达点云数据的实时渲染. 武汉大学学报. 信息科学版. 30 (1671-8860). 2005.
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